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Experimental Investigation on the Effect of Rubber Powder on Mechanical Properties of PVA Fiber Concrete

机译:橡胶粉对PVA纤维混凝土力学性能影响的实验研究

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To verify the damping improvement by replacing partial sand with rubber powder in the concrete process, this study investigated the effects of the rubber powder (5%, 10%, 15%, and 20%) on the mechanical properties and micromechanism of polyvinyl alcohol (PVA) fiber-reinforced concrete. In addition, in order to discuss its damping performance, free vibration test was conducted. Microstructure analyses were conducted by the scanning electron microscope (SEM) test. These results indicated that, as the content of the rubber powder increased, the damping ratio increased, and the compressive strength decreased, but this strength loss can be effectively controlled by adding PVA fiber. The rubber powder with a volume content of 5% and PVA with a mass of 2.4?kg/m 3 were the most optimal mixing to balance the strength and damping requirement. According to the SEM test results, the rubber powder was beneficial to improve the damping ratio of PVA concrete, but it aggravated its interface defects.
机译:为了通过在混凝土过程中用橡胶粉更换部分砂来验证阻尼改善,本研究调查了橡胶粉(5%,10%,15%和20%)对聚乙烯醇的机械性能和微机械的影响( PVA)纤维钢筋混凝土。 另外,为了讨论其阻尼性能,进行自由振动试验。 通过扫描电子显微镜(SEM)测试进行微观结构分析。 这些结果表明,随着橡胶粉的含量增加,阻尼比增加,并且抗压强度降低,但是通过添加PVA纤维可以有效地控制这种强度损失。 体积含量为5%和PVA的橡胶粉,质量为2.4 kg / m 3是平衡强度和阻尼要求的最佳混合。 根据SEM测试结果,橡胶粉有利于提高PVA混凝土的阻尼比,但它加剧了其界面缺陷。

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